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  • 1
    Publication Date: 2016-06-07
    Description: Resonance ionization mass spectrometry (RIMS) is a relatively new laser-based technique for the determination of isotopic abundances. The resonance ionization process depends upon the stepwise absorption of photons from the laser, promoting atoms of the element of interest through progressively higher electronic states until an ion is formed. Sensitivity arises from the efficiency of the resonant absorption process when coupled with the power available from commercial laser sources. Selectivity derives naturally from the distinct electronic structure of different elements. This isobaric discrimination has provided the major impetus for development of the technique. Resonance ionization mass spectrometry was used for analysis of the isotopic abundances of the rare earth lutetium. Isobaric interferences from ytterbium severely effect the ability to measure small amounts of the neutron-deficient Lu isotopes by conventional mass spectrometric techniques. Resonance ionization for lutetium is performed using a continuous-wave laser operating at 452 nm, through a sequential two-photon process, with one photon exciting the intermediate resonance and the second photon causing ionization. Ion yields for microgram-sized quantities of lutetium lie between 10(6) and 10(7) ions per second, at overall ionization efficiencies approaching 10(-4). Discrimination factors against ytterbium greater than 10(6) have been measured. Resonance ionization for technetium is also being explored, again in response to an isobaric interference, molybdenum. Because of the relatively high ionization potential for Tc, three-photon, two-color RIMS processes are being developed.
    Keywords: INORGANIC AND PHYSICAL CHEMISTRY
    Type: Lunar and Planetary Inst. Workshop on Cosmogenic Nuclides; 2 p
    Format: application/pdf
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  • 2
    Publication Date: 2019-06-27
    Description: Blood flow velocity measurements, using Doppler velocimeter, are described. The ability to measure blood velocity using ultrasound is derived from the Doppler effect; the change in frequency which occurs when sound is reflected or transmitted from a moving target. When ultrasound of the appropriate frequency is transmitted through a moving blood stream, the blood cells act as point scatterers of ultrasonic energy. If this scattered ultrasonic energy is detected, it is found to be shifted in frequency according to the velocity of the blood cells, nu, the frequency of the incident sound, f sub o, the speed of sound in the medium, c, and the angle between the sound beam and the velocity vector, o. The relation describing this effect is known as the Doppler equation. Delta f = 2 f sub o x nu x cos alpha/c. The theoretical and experimental methods are evaluated.
    Keywords: AEROSPACE MEDICINE
    Type: NASA-CR-155233
    Format: application/pdf
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  • 3
    Publication Date: 2019-06-27
    Description: Equilibrium thermodynamic properties for pure carbon dioxide are presented in tabulated and graphical form for temperatures from 100 K to 25,000 K and pressures from 40 mN/sq m to 1 GN/sq m. Properties include pressure, temperature, density, enthalpy, speed of sound, entropy, molecular weight ratio, specific heat at constant pressure, specific heat at constant volume, isentropic exponent, and species mole fractions.
    Keywords: INORGANIC AND PHYSICAL CHEMISTRY
    Type: NASA-SP-3097
    Format: application/pdf
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  • 4
    Publication Date: 2019-06-27
    Description: A pulsed ultrasonic Doppler velocity meter which can be used (by modifying transducers) as a flowmeter for blood circulation was experimentally studied. Calculations and profiles of turbulent and laminar flow within blood vessels are shown. Graphs and charts of transducers are included.
    Keywords: AEROSPACE MEDICINE
    Type: NASA-CR-143458
    Format: application/pdf
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  • 5
    Publication Date: 2019-06-27
    Description: Properties considered for the pure gas are: (1) pressure; (2)temperature,(3) density, (4) enthalpy, (5) speed of sound; (6) entropy, (7) molecular weight ratio, (8) specific heat at constant pressure; (9) specific heat at constant volume; (1) isentropic exponent and (11) species mole fractions.
    Keywords: INORGANIC AND PHYSICAL CHEMISTRY
    Type: NASA-TM-X-72658
    Format: application/pdf
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  • 6
    Publication Date: 2019-06-27
    Description: Rankings of relative toxicity can be markedly affected by changes in test variables. Revision of the USF/NASA toxicity screening test procedure to eliminate the connecting tube and supporting floor and incorporate a 1.0 g sample weight, 200 C starting temperature, and 800 C upper limit temperature for pyrolysis, reversed the rankings of flexible polyurethane and polychloroprene foams, not only in relation to each other, but also in relation to cotton and red oak. Much of the change is attributed to reduction of the distance between the sample and the test animals, and reduction of the sample weight charged. Elimination of the connecting tube increased the relative toxicity of the polyurethane foams. The materials tested were flexible polyurethane foam, without and with fire retardant; rigid polyurethane foam with fire retardant; flexible polychloroprene foam; cotton, Douglas fir, red oak, hemlock, hardboard, particle board, polystyrene, and polymethyl methacrylate.
    Keywords: AEROSPACE MEDICINE
    Type: Journal of Combustion Toxicology; 3; Aug. 197
    Format: text
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  • 7
    Publication Date: 2019-06-27
    Description: A transcutanous method to measure instantaneous mean blood flow in peripheral arteries of the human body was defined. Transcutanous and implanted cuff ultrasound velocity measurements were evaluated, and the accuracies of velocity, flow, and diameter measurements were assessed for steady flow. Performance criteria were established for the pulsed Doppler velocity meter (PUDVM), and performance tests were conducted. Several improvements are suggested.
    Keywords: AEROSPACE MEDICINE
    Type: NASA-CR-141235
    Format: application/pdf
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  • 8
    Publication Date: 2019-06-27
    Description: Errors found in the original edition are corrected. Refinement was made in procedures for solving the conservation relations for an incident (moving), standing, and reflected normal shock, as well as in computational methods for determining thermochemical-equilibrium hydrogen properties. A six-species hydrogen model replaces the original four-species model, and the heat of formation and spectroscopic constants used in this six-species model are listed in appendix A. In appendix B, comparisons are made between a number of methods for determining equilibrium thermodynamic properties for hydrogen for several values of pressure and temperatures to 50000 K. A comparison is also performed between the present method and a second method for determining thermodynamic properties and flow velocity behind an incident shock into pure hydrogen and behind a reflected shock.
    Keywords: INORGANIC AND PHYSICAL CHEMISTRY
    Type: NASA-SP-3087-Revised
    Format: application/pdf
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  • 9
    Publication Date: 2019-06-27
    Description: For abstract, see N77-18234.
    Keywords: INORGANIC AND PHYSICAL CHEMISTRY
    Type: NASA-SP-3085-VOL-4
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  • 10
    Publication Date: 2019-06-27
    Description: For abstract, see N77-18234.
    Keywords: INORGANIC AND PHYSICAL CHEMISTRY
    Type: NASA-SP-3085-VOL-3
    Format: application/pdf
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